Stable and high-performance N-micro/mesoporous carbon-supported Pt/Co nanoparticles-GDE for electrocatalytic oxygen reduction in PEMFC

被引:19
作者
Abkar, Zeynab [1 ]
Ojani, Reza [1 ]
Raoof, Jahan bakhsh [1 ]
Roudbari, Mohsen Najafi [1 ]
机构
[1] Univ Mazandaran, Fac Chem, Electroanalyt Chem Res Lab, 4741695447,, Babolsar 4741695447, Iran
关键词
PEMFC; ORR; Co-N-micro; mesoporous carbon; support; Pt; Co bimetallic catalyst; Galvanic replacement; Pt stability; POLYMER-ELECTROLYTE MEMBRANES; ORDERED MESOPOROUS CARBON; BIMETALLIC NANOPARTICLES; FUEL-CELL; DURABLE ELECTROCATALYSTS; PLATINUM NANOPARTICLES; FACILE SYNTHESIS; CATALYST; STABILITY; NANOCRYSTALS;
D O I
10.1016/j.ijhydene.2022.04.110
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The current research presented a novel type of stable and high-performance electrocatalyst for oxygen reduction reaction (ORR). For this purpose, N-micro/mesoporous carbon-supported Pt/Co nanoparticles (NPs) were synthesized through a two-step procedure. The Co-N-micro/mesoporous carbon support was first prepared by the direct carbonization of zeolitic imidazolate framework-67 (ZIF-67). Next, the N-micro/mesoporous carbon-supported Pt/Co NPs were synthesized by galvanic replacement of Pt (IV) ions with Co nanoparticles. The surface properties and chemical structure of the prepared electrocatalyst were measured by field emission scanning electron microscopy (FESEM), Xray diffraction (XRD), N2 adsorption-desorption, energy dispersive spectrometry (EDS) techniques. The results confirmed the desirable properties of the prepared electrocatalyst which enhanced the ORR kinetic. The ORR performance of the prepared electrocatalyst was examined utilizing the catalyst coated membrane electrode (CCME) in the homemade halfcell. The ORR performance of N-micro/mesoporous carbon-supported Pt/Co NPs loaded on the gas diffusion electrode (Pt/Co-NC-GDE) was evaluated in an acidic solution. The electrochemical tests exhibited the superior current density and power density of the Pt/CoNC-GDE (-58.7 mAcm-2 at 0.3 V/RHE and 17.6 mW cm-2) compared to those of Pt/C-GDE(-43.7 mAcm-2, and 13.1 mW cm-2). Furthermore, durability tests indicated the higher stability of Pt/Co-NC-GDE than Pt/C-GDE.(c) 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:19252 / 19262
页数:11
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